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Painful cutaneous laser stimuli induce event-related gamma-band activity in the lateral thalamus of humans

机译:痛苦的皮肤激光刺激在人的外侧丘脑中诱导与事件相关的γ-带活动

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摘要

Although the thalamus is an important module in “pain networks,” there are few studies of the effect of experimental pain upon thalamic oscillations. We have now examined the hypothesis that, during a series of painful cutaneous laser stimuli, thalamic signals will show stimulus-related gamma-band spectral activity, which is modulated by attention to vs. distraction from the painful stimulus. When the series of laser stimuli was presented, attention was focused by counting the laser stimuli (count laser task), while distraction was produced by counting backward (count back plus laser task). We have studied the effect of a cutaneous laser on thalamic local field potentials and EEG activity during awake procedures (deep brain stimulation implants) for the treatment of essential tremor. At different delays after the stimulus, three low gamma- (30–50 Hz) and two high gamma-band (70–90 Hz) activations were observed during the two tasks. Greater high-gamma activation was found during the count laser task for the earlier window, while greater high-gamma activation was found during the count back plus laser task for the later window. Thalamic signals were coherent with EEG signals in the beta band, which indicated significant synchrony. Thalamic cross-frequency coupling analysis indicated that the phase of the lower frequency activity (theta to beta) modulated the amplitude of the higher frequency activity (low and high gamma) more strongly during the count laser task than during the count back plus laser task. This modulation might result in multiplexed signals each encoding a different aspect of pain.
机译:尽管丘脑是“疼痛网络”中的重要模块,但很少有人研究实验性疼痛对丘脑振荡的影响。现在,我们检查了以下假设:在一系列疼痛的皮肤激光刺激过程中,丘脑信号将显示与刺激有关的伽马波段光谱活动,该活动由对疼痛刺激的关注与分散注意力来调节。当提出一系列激光刺激时,注意力集中在对激光刺激的计数上(计数激光任务),而注意力分散在通过向后计数(计数加激光任务)而分散注意力。我们已经研究了在清醒程序(深部脑刺激植入物)中用于治疗原发性震颤的皮肤激光对丘脑局部场电位和脑电活动的影响。刺激后,在不同的延迟下,在两个任务期间观察到了三个低伽马(30–50 Hz)和两个高伽马频带(70–90 Hz)激活。在较早窗口的计数激光任务期间发现了更高的高伽玛激活,而在较后窗口的计数加激光任务期间发现了更高的高伽玛激活。丘脑信号与β波段的EEG信号相干,表明存在明显的同步性。丘脑跨频耦合分析表明,与计数反向加激光任务相比,在计数激光任务期间,较低频率活动的相位(θ至β)更强烈地调制了较高频率活动(幅度和高伽马)的幅度。这种调制可能会导致多路复用的信号每个都编码疼痛的不同方面。

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